Dependences of the Fastest Growing Williams Mode on an Applied Field in Electrohydrodynamics
Shoichi Kai, Tsuyoshi Kai, Kazuyoshi Hirakawa
Abstract
Shoichi Kai, Tsuyoshi Kai, Kazuyoshi Hirakawa
Abstract
The fastest growing Williams modes have been studied in the electrohydrodynamics of nematic MBBA under the microscope. The dependence of these modes on applied voltage has sharp crooks at every transition points. Six transitions are confirmed by counting these crooks from the static state to turbulence (DSM).
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The fastest growing Williams modes have been studied in the electrohydrodynamics of nematic MBBA under the microscope. The dependence of these modes on applied voltage has sharp crooks at every transition points. Six transitions are confirmed by counting these crooks from the static state to turbulence (DSM).
Key concepts: Electrohydrodynamics, MBBA, Turbulence, Liquid crystal, Electric field, Condensed matter physics, Physics, Mode (computer interface)